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Designing a Polymerase Chain Reaction Device Working with Radiation and Convection Heat Transfer

机译:设计聚合酶链式反应装置,使用辐射和对流传热

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Gene proliferation is vital for infectious and genetic diseases diagnosis from a blood sample, even before birth. In addition, DNA sequencing, genetic finger-print analyzing, and genetic mutation detecting can be mentioned as other procedures requiring gene reproduction. Polymerase chain reaction, briefly known as PCR, is a convenient and effective way to accomplish this task; where the DNA containing sample faces three temperature phases alternatively. These phases are known as denaturation, annealing, and elongation/extension which in this study -regarding the type of the primers and the target DNA sequence- are set to occur at 95, 58, and 72 degrees of Celsius. In this study, a PCR device has been designed and fabricated which uses radiation and convection heat transfer at the same time to set and control the mentioned thermal sections. A 300W incandescent light bulb able to immediately turn off and on along with two 8×8 cm DC fans, controlled by a microcontroller as well as PID and PD controller codes are used to monitor the applied thermal cycles. In designing the controller codes it has been concerned that they not only control the temperature over the set-points as well as possible, but also increase the temperature variation rate between each two phases. The temperature data were plotted and DNA samples were used to assess the device function.
机译:即使在出生前,基因增殖对于感染性和遗传疾病的诊断至关重要。另外,可以提及DNA测序,遗传指纹分析和基因突变检测作为需要基因繁殖的其他程序。聚合酶链反应,简要称为PCR,是实现这项任务的方便有效的方法;含有DNA样品的情况下,含有三个温度相。这些阶段称为变性,退火和伸长/延伸,其在该研究中 - 将引物的类型和靶DNA序列的类型设定为95,58和72摄氏度。在该研究中,已经设计和制造了PCR器件,其使用辐射和对流传热同时设定和控制所述的所述热部分。 300W的白炽灯泡能够立即关闭和与两个8×8cm DC风扇一起,由微控制器控制以及PID和PD控制器代码控制,用于监测施加的热循环。在设计控制器码时,它一直担心它们不仅可以控制设定点的温度以及可能的温度,而且还增加了每两个阶段之间的温度变化率。绘制温度数据并使用DNA样品来评估器件功能。

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